犬未成熟恒牙髓腔干细胞介导的牙髓再生初步研究。

Preliminary study on dental pulp stem cell-mediated pulp regeneration in canine immature permanent teeth.

机构信息

School and Hospital of Stomatology, Peking University, Beijing, China.

出版信息

J Endod. 2013 Feb;39(2):195-201. doi: 10.1016/j.joen.2012.10.002. Epub 2012 Nov 10.

Abstract

INTRODUCTION

The health of human teeth depends on the integrity of the hard tissue and the activity of the pulp and periodontal tissues, which are responsible for nutritional supply. Without the nourishing of the pulp tissue, the possibility of tooth fracture can increase. In immature permanent teeth, root development may be influenced as well. This study explored the potential of using autologous dental pulp stem cells (DPSCs) to achieve pulp regeneration in a canine pulpless model.

METHODS

The establishment of the pulpless animal model involved pulp extirpation and root canal preparation of young permanent incisor teeth in beagles. Autologous DPSCs were obtained from extracted first molars and expanded ex vivo to obtain a larger number of cells. The biological characteristics of canine DPSCs (cDPSCs) were analyzed both in vitro and in vivo by using the same method as used in human DPSCs. cDPSCs were transplanted into the pulpless root canal with Gelfoam as the scaffold, and root development was evaluated by radiographic and histologic analyses.

RESULTS

cDPSCs with rapid proliferation, multiple differentiation capacity, and development potential were successfully isolated and identified both in vitro and in vivo. After they were transplanted into the pulpless root canal with Gelfoam as the scaffold, DPSCs were capable of generating pulp-like tissues containing blood vessels and dentin-like tissue. Thickening of the root canal wall was also observed.

CONCLUSIONS

This study demonstrates the feasibility of using stem cell-mediated tissue engineering to realize pulp regeneration in immature teeth.

摘要

简介

人类牙齿的健康取决于硬组织的完整性和牙髓及牙周组织的活性,它们负责提供营养。没有牙髓组织的滋养,牙齿断裂的可能性会增加。在未成熟的恒牙中,根的发育也可能受到影响。本研究探讨了利用自体牙髓干细胞(DPSCs)在犬无髓模型中实现牙髓再生的潜力。

方法

建立无髓动物模型涉及从比格犬的年轻恒切牙中取出牙髓和根管准备。从拔出的第一磨牙中获得自体 DPSCs,并在体外扩增以获得更多数量的细胞。使用与人类 DPSCs 相同的方法,在体外和体内分析犬 DPSCs(cDPSCs)的生物学特性。将 cDPSCs 与 Gelfoam 一起移植到无髓根管中作为支架,并通过影像学和组织学分析评估根的发育情况。

结果

成功地在体外和体内分离和鉴定了具有快速增殖、多向分化能力和发育潜力的 cDPSCs。当它们与 Gelfoam 一起移植到无髓根管中作为支架时,DPSCs 能够产生含有血管和牙本质样组织的牙髓样组织。还观察到根管壁的增厚。

结论

本研究证明了利用干细胞介导的组织工程实现未成熟牙齿牙髓再生的可行性。

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